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Design for Distributed Feedback Laser Biosensors Based on the Active Grating Model

机译:基于有源光栅模型的分布式反馈激光生物传感器设计

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摘要

The distributed feedback (DFB) laser is widely used in sensing because of its portable size, simple fabrication and high sensitivity. Most theoretical design models are based on passive Bragg gratings. However, passive grating models cannot be used to predict sensor performance using the important indicator of figure of merit (FOM) through theoretical calculations. To solve this problem, we replaced the passive grating with an active grating by using the imaginary part of the coupling constant that represents the value of the gain. As a comparison, the influence of the full width at half maximum (FWHM) and sensitivity were analyzed for different grating duty cycles and depths in the passive grating sensors. To obtain a higher FOM in the active grating sensors, we systematically investigated the effects of duty cycle and gain value through numerical simulations. We found that the redshift caused by a duty cycle increase can improve the sensitivity of biomolecule detection by 1.7 times.
机译:分布式反馈(DFB)激光由于其便携的尺寸,简单的制造和高灵敏度而被广泛用于传感。大多数理论设计模型都基于无源布拉格光栅。但是,无源光栅模型不能通过理论计算使用重要品质因数(FOM)来预测传感器性能。为了解决这个问题,我们通过使用代表增益值的耦合常数的虚部来将无源光栅替换为有源光栅。作为比较,针对无源光栅传感器中不同的光栅占空比和深度,分析了半高全宽(FWHM)和灵敏度的影响。为了在有源光栅传感器中获得更高的FOM,我们通过数值模拟系统地研究了占空比和增益值的影响。我们发现,由占空比增加引起的红移可以将生物分子检测的灵敏度提高1.7倍。

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